使用 INAA 方法测定湖泊沉积物 CRM(KRISS 109-05-002)中钴、铬和锌的认证值

IF 1.5 3区 化学 Q3 CHEMISTRY, ANALYTICAL
Hana Cho, Kishore B. Dasari, Myung Chul Lim, Seong Pyo Hong, Gwang-Min Sun, Sung Woo Heo, Kyoung-Seok Lee
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引用次数: 0

摘要

采用标准校准器-仪器中子活化分析方法对韩国标准与科学研究院开发的湖泊沉积物有证标准物质(CRM)中的钴、铬和锌的质量分数进行了表征。该方法针对每种元素和沉积物基质进行了验证,并重复进行了有证标准物质分析,以确保重现性并解决潜在的基质干扰问题。为了验证测量的可靠性,还对质量控制样本进行了评估。对于 Zn 峰值较小,而 Eu 和 Sc 峰值较大的湖泊沉积物样品,进行了连续测量,以获得准确的 Zn 浓度。最佳测量时间是 Sc 峰充分衰减,而 Zn 峰的强度仍大于 Eu 峰时。此外,还需要一个能对复杂峰区进行去卷积的适当拟合程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Determination of certified values for Co, Cr, and Zn in lake sediment CRM (KRISS 109-05-002) using the INAA method

Determination of certified values for Co, Cr, and Zn in lake sediment CRM (KRISS 109-05-002) using the INAA method

The standard calibrator–instrumental neutron activation analysis method was used to characterize the mass fractions of Co, Cr, and Zn in a lake sediment certified reference material (CRM) developed by the Korea Research Institute of Standards and Science. The method was validated for each element and sediment matrix, and the CRM analysis was repeated to ensure reproducibility and address potential matrix interferences. To verify measurement reliability, quality control samples were also assessed. For lake sediment samples with a small Zn peak and dominant adjacent peaks of Eu and Sc, sequential measurements were performed to obtain accurate Zn concentrations. The optimal measurement timing was when the Sc peak sufficiently decayed and the intensity of the Zn peak remained larger than that of Eu. Moreover, an appropriate fitting program capable of deconvoluting complex peak regions is necessary.

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来源期刊
CiteScore
2.80
自引率
18.80%
发文量
504
审稿时长
2.2 months
期刊介绍: An international periodical publishing original papers, letters, review papers and short communications on nuclear chemistry. The subjects covered include: Nuclear chemistry, Radiochemistry, Radiation chemistry, Radiobiological chemistry, Environmental radiochemistry, Production and control of radioisotopes and labelled compounds, Nuclear power plant chemistry, Nuclear fuel chemistry, Radioanalytical chemistry, Radiation detection and measurement, Nuclear instrumentation and automation, etc.
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